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Research Article

Multi-objective optimization for the installation configuration of rooftop photovoltaic panels in detached rural house

Qing Wu1Xindi Zhao1Guohui Feng1Jing Liu2Puning Xue3Lin Liu4( )
Liaoning Provincial Engineering Research Center of Building Carbon Neutrality, School of Municipal and Environment Engineering, Shenyang Jianzhu University, Shenyang 110168, China
School of Architecture and Design, Harbin Institute of Technology, Harbin 150000, China
School of Civil Engineering, Zhengzhou University, Zhengzhou 450006, China
School of Civil and Transportation Engineering, Guangdong University of Technology, Guangzhou 510006, China
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Abstract

Making full use of rooftop resources in rural areas is significant to promoting rural revitalization, achieving carbon neutrality. However, photovoltaic panels affect the heat changes of detached rural houses, thereby having inevitable impacts on indoor and surrounding environment. With the precipitation line has shifted northward, the attention to the problem of high indoor temperatures in summer has been increasing year by year. This study quantified the effects of installation height and area of rooftop photovoltaic panels on indoor air temperature, smoke exhaust efficiency and natural lighting under summer conditions. Based on response surface methodology, the independent and interactive influences of installation height and area were explored. It was found that at a lower installation height of 300 mm, the heating effect caused by photovoltaic panels was stronger than the cooling effect due to shading, and an increase in photovoltaic area caused indoor air temperature to increase by 3.36 ℃. When the installation height was 1000 mm, the heating effect was equivalent to the shading effect. Photovoltaic panels affected local airflow field, creating a jet-like high-velocity airflow layer around the detached house. The vertical height of the jet (D1) and the vertical distance from the lower boundary layer to chimney (D2) were proposed to evaluate the promoting effect on smoke exhaust. Overall, the installation of photovoltaic panels had weak influence on natural lighting. The entropy weight-TOPSIS method was used to quantify the optimal installation scheme of photovoltaic panels. According to the climate of Shenyang, the configuration scheme with an installation height of 1.0 m and area of 47.8 m2 was recommended. This study provides a theoretical basis for rural photovoltaic installation and promotes the transformation from power-centered type to environmentally friendly design approach.

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Building Simulation
Pages 949-967

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Cite this article:
Wu Q, Zhao X, Feng G, et al. Multi-objective optimization for the installation configuration of rooftop photovoltaic panels in detached rural house. Building Simulation, 2026, 19(4): 949-967. https://doi.org/10.1007/s12273-026-1420-5

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Received: 03 November 2025
Revised: 30 December 2025
Accepted: 25 January 2026
Published: 28 February 2026
© Tsinghua University Press 2026